Ghio Emanuele, Cerri Emanuela
Department of Engineering and Architecture, University of Parma, Via G. Usberti, 181/A, 43124 Parma, Italy.
Materials (Basel). 2023 Oct 10;16(20):6620. doi: 10.3390/ma16206620.
The AZ series of Mg alloys have become promising in several industrial fields thanks to its potential microstructure refinement and the β-MgAl eutectic that controls the mechanical behaviour. Simultaneously, the rapid degradation characterizing Mg alloys makes the investigation of their corrosion behaviour necessary. The present work considers high-pressure die cast (HPDC) AZ91 alloy to evaluate its corrosion behaviour in 1M NaCl solution and investigates how different friction stir process parameters can affect the corrosion responses. No studies analyse the effects induced by the friction stir processed zone, reached using high rotational speeds (>2000 rpm), on the unprocessed HPDC AZ91 alloy. In addition, the morphological analysis of the corroded surfaces having a friction stir processed zone, in which the grain refinement was not obtained, is not present in the literature yet. Microstructural features were investigated by optical microscope and X-ray diffraction analysis before and after the friction stir process. These were subsequently correlated to the corrosion responses after the immersion tests. The results show that HPDC samples with a very smooth surface have the best corrosion resistance with a corrosion rate lower than 3 mm/year, evaluated through the weight loss, compared to the rougher ones. Both the amount of β-MgAl eutectic and the wt.% Al in the α-Mg matrix, as well as the surface roughness, influence the corrosion behaviour of friction stir processed samples. The best corrosion resistance was obtained with an HPDC alloy processed at 2500 rpm and 50 mm/min.
由于其潜在的微观结构细化以及控制机械性能的β-MgAl共晶,AZ系列镁合金在多个工业领域已变得很有前景。同时,镁合金快速降解的特性使得研究其腐蚀行为成为必要。本工作考虑了高压压铸(HPDC)AZ91合金,以评估其在1M NaCl溶液中的腐蚀行为,并研究不同的搅拌摩擦工艺参数如何影响腐蚀响应。尚无研究分析使用高转速(>2000 rpm)达到的搅拌摩擦加工区对未加工的HPDC AZ91合金所产生的影响。此外,文献中尚未出现对未获得晶粒细化的具有搅拌摩擦加工区的腐蚀表面的形态分析。在搅拌摩擦加工前后,通过光学显微镜和X射线衍射分析研究微观结构特征。随后将这些特征与浸泡试验后的腐蚀响应相关联。结果表明,与较粗糙的样品相比,表面非常光滑的HPDC样品具有最佳的耐腐蚀性,通过失重评估其腐蚀速率低于3毫米/年。β-MgAl共晶的数量、α-Mg基体中的Al重量百分比以及表面粗糙度都会影响搅拌摩擦加工样品的腐蚀行为。在2500 rpm和50 mm/min的条件下对HPDC合金进行加工可获得最佳的耐腐蚀性。